Yuzhuo Jing

dblp:284/5039 · DBLP profile ↗
← Back
5ranked-venue papers
2as first author
4since 2021 · last 2025
0009-0009-8938-447XORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Software engineering, systems software and programming languages · 4 · 2 first-author · 4 since 2021Systems, architecture and hardware · 1
YearPublicationVenuePosition
2025 Deriving Semantic Checkers from Tests to Detect Silent Failures in Production Distributed Systems
Chang Lou, Dimas Shidqi Parikesit, Yujin Huang, Zhewen Yang, Senapati Diwangkara, Yuzhuo Jing, Achmad I. Kistijantoro, Ding Yuan 0004, Suman Nath, Peng Huang 0005
OSDI6
2025 Optimistic Recovery for High-Availability Software via Partial Process State Preservation
abstract
Achieving high availability for modern software requires fast and correct recovery from inevitable faults. This is notoriously difficult. Existing techniques either guarantee correctness by discarding all state but suffer from long downtime, or preserve all state to recover quickly but reintroduce the fault.
Yuzhuo Jing, Yuqi Mai, Angting Cai, Wanning He, Xiaoyang Qian, Peter M. Chen, Peng Huang 0005
SOSP1
2022 Operating System Support for Safe and Efficient Auxiliary Execution
Yuzhuo Jing, Peng Huang 0005
OSDI1
2022 Demystifying and Checking Silent Semantic Violations in Large Distributed Systems
Chang Lou, Yuzhuo Jing, Peng Huang 0005
OSDI2
2020 BORA: a bag optimizer for robotic analysis
abstract
We present BORA (Bag Optimizer for Robotic Analysis), a file system middleware that optimizes the acquisition of bags, which are specially formatted files used to store timestamped ROS (robot operating system) messages. BORA sits between ROS and an existing file system to conduct semantic-aware data pre-processing. In particular, it categorizes ROS bag data into multiple groups with each having a distinct label. BORA predigests data index constructions and reduces file open time via a hash-based label management scheme. It is also capable of providing ROS analytic applications with only data needed without a sequence of data searching and locating operations. We implement a BORA prototype, which is then integrated into three computing platforms: a single-node server, a four-node PVFS storage cluster, and a Tianhe-1A Supercomputer storage subsystem. Next, we evaluate the BORA prototype on the three platforms using four real-world ROS applications. Our experimental results show that compared to a traditional bag management scheme BORA improves data acquisition performance by up to 11x. In addition, it offers up to 10x data acquisition performance improvement and 3,100x bags open improvement under a swarm robotics data analysis scenario where data is retrieved across multiple bags simultaneously.
Jian Zhang 0070, Tao Xie 0004, Yuzhuo Jing, Guanzhou Hu, Si Chen 0009, Shu Yin 0001
SC3